川西林盘优势天然草本植物根系构型及抗拉力学特性研究

Root System Architecture and Tensile Mechanical Properties of Dominant Spontaneous Herbs in the Linpan of Western Sichuan

  • 摘要: 川西林盘(简称林盘)作为成都平原典型的传统乡村聚落单元, 不仅是当地乡村的典型代表, 更展现了该区域独特的地形格局与生态特征。当前, 林盘正面临生态退化与水土流失的双重威胁。为此, 本研究选取成都市郫都区林盘中的6种优势天然草本, 分别为须根系的牛膝菊(Galinsoga parviflora)和一年蓬(Erigeron annuus), 直根系的龙葵(Solanum nigrum)、土牛膝(Achyranthes aspera)、艾蒿(Artemisia argyi)和小蓬草(Erigeron canadensis), 分析其根系在生长季和休眠季中的构型与抗拉力学特性差异, 综合评价其固土能力, 为川西林盘生态修复及水土流失治理提供科学的植物选择依据。结果表明: (1)除土牛膝的根系分支模式接近于鱼尾型外, 其余植物的根系都更趋向于叉状分支。其中, 一年蓬无明确主根且根系各级分支长度和角度最为相似, 体现出其作为先锋物种的根系适应性; 牛膝菊和龙葵根系则以较大的根系总分叉数, 表征了其强大的资源抢占预适应能力。(2)牛膝菊单根在生长季的抗拉强度(18.2 MPa)和弹性模量(348.29 MPa)均为最大, 艾蒿单根在休眠季的抗拉强度(45.89 MPa)和弹性模量(670.17 MPa)则显著高于其他植物, 这2种植物的根系展示出最佳的固土潜能。(3)根系抗拉强度和弹性模量均与根径呈极显著负相关, 证实细根在提升固土能力上具有决定性作用。综上所述, 牛膝菊和艾蒿的根系在固土方面综合表现最佳, 其根系在固土方面形成了天然的生长阶段互补。在林盘的生态修复实践中, 可通过封育管护、控制干扰等措施, 优先抚育这2种植物的自然种群, 即可低成本、高效地发挥其水土保持功能。

     

    Abstract: As a typical traditional rural settlement unit on the Chengdu Plain, Linpan in Western Sichuan, hereafter referred to as Linpan, is not only a representative form of local rural settlement, but also reflects the distinctive topographic pattern and ecological characteristics of the region. At present, Linpan landscapes are facing the dual threats of ecological degradation and soil erosion. Therefore, this study selected six dominant natural herb species in Linpan settlements in Pidu District, Chengdu, namely the fibrous-rooted species Galinsoga parviflora and Erigeron annuus, and the taprooted species Solanum nigrum, Achyranthes aspera, Artemisia argyi, and Erigeron canadensis. The differences in root architecture and tensile mechanical properties between the growing season and the dormant season were analyzed, and their soil reinforcement capacity was comprehensively evaluated, so as to provide a scientific basis for plant selection in ecological restoration and soil erosion control in Western Sichuan Linpan landscapes. The results show that: (1) Except for the root branching pattern of Achyranthes aspera, which was close to the herringbone type, the root systems of the other species tended more toward dichotomous branching. Among them, Erigeron annuus had no distinct taproot, and the lengths and angles of its root branches at different orders were similar, reflecting its root adaptability as a pioneer species. The root systems of Galinsoga parviflora and Solanum nigrum were characterized by notably high total numbers of root bifurcations, indicating their strong pre-adaptive capacity for resource preemption. (2) In the growing season, the tensile strength (18.2 MPa) and elastic modulus (348.29 MPa) of single roots of Galinsoga parviflora were the highest, while in the dormant season, the tensile strength (45.89 MPa) and elastic modulus (670.17 MPa) of single roots of Artemisia argyi were significantly higher than those of the other species. The root systems of these two species showed the greatest potential for soil reinforcement. (3) Both root tensile strength and elastic modulus showed a highly significant negative correlation with root diameter, confirming that fine roots play a decisive role in enhancing soil reinforcement capacity. In summary, the root systems of Galinsoga parviflora and Artemisia argyi showed the best overall performance in soil reinforcement, forming a natural complementarity across growth stages. In ecological restoration practices for Linpan landscapes, the natural populations of these two species can be prioritized for conservation through enclosure management, disturbance control, and other measures, thereby enabling their soil and water conservation functions to be realized in a low-cost and efficient manner.

     

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